Related Experiment Video
Updated: Jul 24, 2025

A Fluorescence-based Method to Study Bacterial Gene Regulation in Infected Tissues
Published on: February 19, 2019
Fluoroquinolone resistance does not facilitate phage Φ13 integration or excision in Staphylococcus aureus
Helena Leinweber1, Raphael N Sieber2, Martin S Bojer1
1Department of Veterinary and Animal Sciences, University of Copenhagen, Stigbøjlen 4, 1870 Copenhagen, Denmark.
Abstract:
Prophages of the ΦSa3int family are commonly found in human-associated strains of Staphylococcus aureus where they encode factors for evading the human innate immune system. In contrast, they are usually absent in livestock-associated methicillin-resistant S. aureus (LA-MRSA) strains where the phage attachment site is mutated compared to the human strains. However, ΦSa3int phages have been found in a subset of LA-MRSA strains belonging to clonal complex 398 (CC398), including a lineage that is widespread in pig farms in Northern Jutland, Denmark. This lineage contains amino acid changes in the DNA topoisomerase IV and the DNA gyrase encoded by grlA and gyrA, respectively, which have been associated with fluoroquinolone (FQ) resistance. As both of these enzymes are involved in DNA supercoiling, we speculated that the mutations might impact recombination between the ΦSa3int phage and the bacterial chromosome. To examine this, we introduced the FQ resistance mutations into S. aureus 8325-4attB that carry the mutated CC398-like bacterial attachment site for ΦSa3int phages. When monitoring phage integration and release of Φ13, a well-described representative of the ΦSa3int phage family, we did not observe any significant differences between the FQ-resistant mutant and the wild-type strain. Thus our results suggest that mutations in grlA and gyrA do not contribute to the presence of the ΦSa3int phages in LA-MRSA CC398.
Insights
Fluoroquinolone resistance mutations in Staphylococcus aureus do not affect ΦSa3int prophage presence. These findings suggest that changes in bacterial DNA gyrase and topoisomerase IV are not responsible for integrating these immune-evading phages into livestock-associated MRSA strains.
Area of Science:
- Microbiology
- Bacteriology
- Virology
Background:
- ΦSa3int prophages are common in human-associated Staphylococcus aureus, aiding immune evasion.
- These phages are typically absent in livestock-associated methicillin-resistant S. aureus (LA-MRSA) due to mutated attachment sites.
- However, a subset of LA-MRSA CC398 strains, particularly in Danish pig farms, harbor ΦSa3int phages.
Purpose of the Study:
- To investigate whether fluoroquinolone (FQ) resistance mutations in S. aureus CC398 affect ΦSa3int prophage integration.
- To determine if mutations in bacterial DNA gyrase (gyrA) and topoisomerase IV (grlA) influence phage-host recombination.
Main Methods:
- Introduced FQ resistance mutations (in grlA and gyrA) into S. aureus 8325-4attB with a CC398-like attachment site.
- Monitored the integration and release of the ΦSa3int phage Φ13 in both mutant and wild-type strains.
Main Results:
- No significant difference in ΦSa3int phage integration or release was observed between FQ-resistant mutants and the wild-type S. aureus strain.
- The presence of FQ resistance mutations did not impact the recombination efficiency of the phage with the bacterial chromosome.
Conclusions:
- Mutations in grlA and gyrA associated with FQ resistance do not contribute to the presence of ΦSa3int phages in LA-MRSA CC398.
- The mechanism by which ΦSa3int phages are found in this specific LA-MRSA lineage remains to be elucidated.
Related Concept Videos
Gene Regulation in Microbial Communities: Quorum Sensing
Development of Antibiotic Resistance
DNA Bacteriophages
Lysogenic Cycle of Bacteriophages

